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Strangeness production and color deconfinement

机译:陌生化生产和颜色解构

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The relative multiplicities for hadron production in different high energy collisions are in general well described by an ideal gas of all hadronic resonances, except that under certain conditions, strange particle rates are systematically reduced. We show that the suppression factor γs, accounting for reduced strange particle rates in pp, pA and AA collisions at different collision energies, becomes a universal function when expressed in terms of the initial entropy density s0 or the initial temperature T of the produced thermal medium. It is found that γs increases from about 0.5 to 1.0 in a narrow temperature range around the quark–hadron transition temperature Tc ? 160MeV. Strangeness suppression thus disappears with the onset of color deconfinement; subsequently, full equilibrium resonance gas behavior is attained.
机译:不同高能量碰撞中强子生产的相对多重性通常是通过所有辐射共振的理想气体良好描述,不同之处在于,在某些条件下,系统地减少了奇怪的粒径。 我们表明,在不同碰撞能量的PP,PA和AA碰撞中占PP,PA和AA碰撞中的降低的抑制因子γs,当以初始熵密度S0或产生的热介质的初始温度T表示时,变为通用功能 。 发现γs在Quark-Havron转变温度Tc周围的窄温度范围内从约0.5到1.0增加到0.5°。 160mev。 因此,奇异抑制随着颜色剥离的发作而消失; 随后,达到满平衡共振气体行为。

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